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Reversible Switching of Liquid Crystalline Order Permits Synthesis of Homogeneous Populations of Dipolar Patchy Microparticles

机译:液晶顺序的可逆转换允许合成偶极斑块微粒的均质群体

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摘要

The spontaneous positioning of colloids on the surfaces of micrometer-sized liquid crystalline droplets and their subsequent polymerization offers the basis of a general and facile method for the synthesis of patchy microparticles. The existence of multiple local energetic minima, however, can generate kinetic traps for colloids on the surfaces of the liquid crystal (LC) droplets and result in heterogeneous populations of patchy microparticles. To address this issue, here we demonstrate that adsorbate-driven switching of the internal configurations of LC droplets can be used to sweep colloids to a single location on the LC droplet surfaces, thus resulting in the synthesis of homogeneous populations of patchy microparticles. The surface-driven switching of the LC can be triggered by addition of surfactant or salts, and permits the synthesis of dipolar microparticles as well as “Janus-like” microparticles. By using magnetic colloids, we illustrate the utility of the approach by synthesizing magnetically-responsive patchy microdroplets of LC with either dipolar or quadrupolar symmetry that exhibit distinct optical responses upon application of an external magnetic field.
机译:胶体在微米大小的液晶微滴表面上的自发定位及其随后的聚合为合成斑驳微粒提供了一种通用且简便的方法的基础。但是,多个局部高能极小分子的存在会在液晶(LC)液滴的表面上产生胶体的动力学陷阱,并导致斑块状微粒的异质种群。为了解决这个问题,在此我们证明,LC液滴内部配置的吸附剂驱动切换可用于将胶体扫到LC液滴表面上的单个位置,从而导致合成均匀的斑块状微粒。 LC的表面驱动切换可以通过添加表面活性剂或盐来触发,并且可以合成偶极微粒以及“类剑”微粒。通过使用磁性胶体,我们通过合成具有偶极或四极对称性的LC的磁响应斑片微滴来说明该方法的实用性,该对称性在施加外部磁场时表现出不同的光学响应。

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